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Could Negative Pressures Turn Bismuth into a Metal? The Case of the Expanded

Superconductivity 2022-01-04 v1 Materials Science

Abstract

Materials may behave in non-expected ways when subject to unexpected conditions. For example, when Bi was turned into an amorphous phase (\textit{a}-Bi) unexpectedly it became a superconductor at temperatures below 1010 K. We provided an explanation as to why \textit{a}-Bi superconducts and the crystalline (\textit{c}-Bi) had not been found to do so: we computer calculated their electronic properties and found that \textit{a}-Bi has a larger electron density of states, eDoS, at the Fermi surface than \textit{c}-Bi and this explained the phenomenon. We even predicted an upper limit for the superconducting TcT_c of the crystalline phase, which was experimentally corroborated within the following year. We now decided to investigate what happens to crystalline (Wyckoff structure) and amorphous Bi when pressures below the atmospheric are applied (expansion). Here we show that when expanded, \textit{c}-Bi becomes more metallic, since the eDoS increases when the volume increases for the Wyckoff structure, while the amorphous eDoS decreases. If the crystalline structure is maintained its TcT_c would rise under expansion, whereas it would diminish for the \textit{a}-Bi. Expansion can be obtained in the laboratory by chemically etching Bi-based alloys, a process also known as dealloying, for example.

Keywords

Cite

@article{arxiv.2201.00088,
  title  = {Could Negative Pressures Turn Bismuth into a Metal? The Case of the Expanded},
  author = {Flor B. Quiroga and David Hinojosa-Romero and Alexander Valladares and Renela M. Valladares and Isaías Rodríguez and Ariel A. Valladares},
  journal= {arXiv preprint arXiv:2201.00088},
  year   = {2022}
}

Comments

13 pages, 7 figures